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Cr and Zr/Cr nitride CAE-PVD coated aluminum bipolar plates for polymer electrolyte membrane fuel cells
Authors:José Barranco  Félix Barreras  Antonio Lozano  Ana M Lopez  Vicente Roda  Jesús Martin  Mario Maza  Gonzalo G Fuentes  Eluxka Almandoz
Affiliation:1. LITEC-CSIC, Univ. Zaragoza, Maria de Luna 10, ES-50018 Zaragoza, Spain;2. University of Zaragoza, Department of Mechanical Engineering, Maria de Luna 3, ES-50018 Zaragoza, Spain;3. AIN, Centro de Ingeniería Avanzada de Superficies, Cordovilla, ES-31191 Pamplona, Spain
Abstract:In this work, two nitride coatings deposited on aluminum-based bipolar plates via cathodic arc evaporation physical vapor deposition (CAE-PVD) have been evaluated using two different techniques. The coating materials, a multi-layer chromium-zirconium nitride (ZrN–CrN) and a monolayer chromium nitride (CrN) have been exposed to electrochemical polarization tests for corrosion resistance simulating the typical environment in the anode and cathode sides in polymer electrolyte membrane fuel cells (PEMFC). Besides, two 3-cell PEMFC stacks, one per each coating material, have been formed. The migration of metal cations toward both the gas diffusion layers (GDL) and catalyst layers have been analyzed by scanning electron microscopy (SEM) and energy dispersive X-ray spectroscopy (EDX), after 100 h of continuous operation of the stacks. Results have shown that the two coatings applied over the Al-plates satisfy the corrosion resistance requirements in the short-term tests performed at the two stacks. Moreover, results obtained from electrochemical polarization tests have revealed that the CrN-coating confers a good corrosion resistance to the Al-based metal plate, achieving values of corrosion potential and corrosion current two orders of magnitude lower than the ones obtained for the Al alloy as-received.
Keywords:Hydrogen  Fuel cells  Bipolar plates  Corrosion  PVD coatings
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